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Vehicle queue effect on the characteristics of air flow, and exhaust scalar dispersion and distribution fields in the vehicle wake

机译:车辆排队对车尾气流的特性,排气标量扩散和分布场的影响

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摘要

The characteristics of air flow, and vehicular exhaust scalar (i.e., pollutant) dispersion and distribution fields in the near-wake region of a scale-model vehicle which was placed alone or behind the preceding one(s) in a closed-circuit wind tunnel facility were experimentally investigated for typical urban driving conditions. The wake structure behind a queue of studied vehicles is mainly dominated by the last one, while the preceding vehide(s) will lead to a stronger downwash flow in the wake. For the vehicle with rear slant angle (α < 30°) which has a pair of trailing vortices in the wake flow, the vehicular exhaust jet plume will be mainly trapped inside these two trailing vortices and fills an "m-shaped" scalar distribution region behind the vehicle. Half of the m-shaped region which is on the vehicular tailpipe exit side shares a larger portion of scalar distribution than the other half. This unbalanced scalar distribution is enhanced by the preceding vehide(s). For the vehicle with rear slant angle (α > 30°) which has a two-dimensional wake flow, the vehicular exhaust jet plume will be carried by such a wake flow to form an "n-shaped" scalar distribution region behind the vehicle with a peak scalar region at its center. The preceding vehicle(s) will further enlarge the n-shaped scalar distribution region and push the peak scalar region closer to the ground. It is clearly shown that the two- or three-dimensional flow behind the studied vehicle can provide different shapes of exhaust scalar dispersion and distribution fields in the vehicle wake.
机译:在闭路风洞中单独放置或放置在前一个模型后面的比例模型车辆的近尾区的气流特性和车辆排气标量(即污染物)的扩散和分布场对典型的城市驾驶条件进行了实验研究。一排经过研究的车辆后面的尾流结构主要由最后一个主导,而前面的车辆将导致尾流中更强的下洗流。对于后倾角(α<30°)且尾流中具有一对尾涡的车辆,车辆排气喷嘴羽流将主要滞留在这两个尾涡内部,并填充“ m形”标量分布区域在车辆后面。在车辆尾管出口侧的m形区域中,有一半的标量分布比例比另一半大。前面的媒介增强了这种不平衡的标量分布。对于具有二维尾流的后倾斜角(α> 30°)的车辆,车辆尾气喷流将被这种尾流携带,从而在车辆后方形成一个“ n形”标量分布区域,中心的标量峰区域。前面的车辆将进一步扩大n形标量分布区域,并将峰值标量区域推近地面。清楚地表明,所研究车辆后面的二维或三维流动可在车辆尾流中提供不同形状的排气标量弥散和分布场。

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